MELO3C010600 (gene) Melon (DHL92) v3.5.1
The following sequences are available for this feature:
Legend: CDS Hold the cursor over a type above to highlight its positions in the sequence below.ATAGTCATTCTTCGAAAGTCCTAACACAACCTACACTCCAGAGCCCATAATTTCCTTTTCTTCGCACAACAATCGGTGCGAGTCGTAGAACAGCAAAATGGCGGAGGAATTACAAGGCAACGATGCTCTCAAAGAAGAACCCATGGATGTAGCTGTTGATATAGAGACGAAGATTCATAACGCTATGCGCTCTCGCATCTCTCACTTCAAGGAACAAGCCGAGTGAGCTTTTTCTTTCTTTCACTTTCTCCTCATTTCCCATCACAGTAATTCCTCTGTGCGGACTTGTCAAGCTTCTCTTTTAGTTTGTGTTTTTCGCGAGATGTTTCTGTTATTCTCTGTGATTTTGGGTGTTCTTGTTTTCAATTACTGTTAATGATGCTGTTATGTTTTATCCTGCACTTGCGAAAATGGTTATTAGATCACCACTAGTTGATTTTCTGCTCTTACTTGTTTCTATCTTGGTAATATTTTCCTTGTTTTGTTTAATTATGTGTATGTACGTTTTGGGACTCGTTTAAATTTTCGGGCCTATTCCGTCAGCTGAGTTTCTTGTTTTTAAGTTCATGGTGGCTTTAGCCTCTAGGGTTTCTTTTGGGCGTGTAAATCTGTAAAAGAGAGGTGAATTTTGTATCTCTTCCATTCTTCTAGGTATGGTTAAATGTTTGGGCGGTTGTATAAGCGGCTTTTAGTGTTTGATATCAAATTGTGTAGGCTTGTGTCTAAACACACGACAAGAATAACGTTCACGTCACTTTCTTGCATGTGGATGTACGTGTGTAGCAACAGAACATTTATATTTGTTTGTAATTGTTAATTTTTGAATTGACATAATTATATTTTTCGATTCCATTTTTTTTCTTTTTCATGCACTGGGGAAAATCTATTGAACTAGGCTGTTGCAATTTGGCTGCACTTTTAACCACTAGATACTAAAAACGTGATACTTGTGTAGTTTATCTCTCATACATCCAACAATTCTTAACTGCTAGTGCTAGCCATGTTTTGGTGGTCTCCTAAATAATTTCTCGTCACTGGTAGTTGGTCTGGAAATCAATTTCATATCAGATGTTGATTTTTTTTTCCTGAACTAATTTTAATAACCATGGATGGGCGGCCGATAAATTTTCAGTTTTTTTTTTTTTCTAGAATATTACATTGCAAATGCAGTGCAGGTACTTGAACCTACATTTTAATGACTTACCTTTGAGCTCTACTTGACAAAAACGATAACGTTGTTTTCTCTCACGTCACTTTTTACAACTCCATGAACTGAAAGATTTTTTAGAGCCGCCAATGACTCAGAAACAGGTCATCTAAGAAAACAAAAGCGAAGGGGTTTTAAGATCAGTTACCAAACGTAATTTCACTTTGCTGTTTTCTCAATAAGCAGAATTTGGACTGACTTTTTGTTTCTTTCTGGATTTGCCTATTTTTTTCCCTTAAGAGTCTTAGACAAGTAGTTTTGTGCCATAGATCTAAAACCAGCTGGAATTTGAACATCTGGTATAGAGCAATTGTCTTGACTGCAGGTTGTGTAGAATTATCAGCAATGTGAGTGGATTTGAGTGAACTTTTTTCTCTCTTAAAAATACCTTCAAAAGATGGTGTATTTTATTTCAAGGATAAGACACCAGGATGCTGCTCTACTTCACGCAATTGAAAATTTTCGCAATTTACTTTCAACTTGTAAGAGCTGCTGATATCACACTCAATGGTGGGAGATTATTTATGGGTTCAAGAAACCTGTCCTTTTATAATTAAAAATCTTACGATGTTGTTAACCACCATTATTTACTGGTTAGAAAGTTTGGATAATGTGAAAGTATGAGTGTATAATCTTACTAGTCACCAAGCAATGTAACTGGAAGCTTATAAGTTTTTTCAGTTGCAACAGATTTTATTTATTACTGTTGGAAACAAGGGTCTTCGTTGATAGTTAATTGCCCCGAGGGTATTTTAGTATTTTACTTTACCCTACGTTTATTTCCTTTTTTGTATTAGGGCCTGCTAAAATCTATAAAGTTGTCTTCTTTTGTAACTTTCAATGTGTGTGAAAATAATAAAAAGTGACTATCCATCGTGGTTTTCTCAACCTATTCTAGGGTTTTCCACATATCTAGTTTTCTTTTTTACCCTAGATGCCATCAACGAAAACCAACCAGTGCAAGATAACCTTAGTTCGGCACTAGCCTCCCTTCTGCCACAGTAGTCGATGGGGCCTCTAACCACTATCGTCAATGCATCAGCCGGAGTCGTCGACTTTTCCACTGTCGACACTGTTGTTGCCATCCAAGCCGCTGTTGATCGTTATCTTCAATCCTTGCGTATCTATCAAACTCTAGCGTCGCCAACCGAAACATACACCATGAAATTGAGATTAGTGAGTTGTCTACCTACCACAAAGATAAATTCCCTGTTGCAGCAACAAGCTTCTCGCAACAACCAGTTCTTCCTTATCTTGCGTCGCCTAGTTATGAATATCAAGATTCAGTTGGTTTATCTTCGATAATGGTACAACAACAGTTGGCTAATCTTCAAACAAGTTTTCAGCAACAAATTGCTCTCTTGGGGCAGCCCTAGATGCTTCCACAAACATAAATTTCAGTACAGTGAATTTTGACATTCCTTCCAGTCTACTGATTTATCTAGAGAATCTCGTAACCATTTTTCCAACTTTAACTACTGCCAACTATTTGTTTGGCTCTATAGGGTTAATTGCAGGAGAAAAGCTGAATGGTTGGAATTATTTCTCCTGGTCTTAATCCATTAACATGGACCTTGAGGGGCACCACAAGTTTAGGTATCAAAGTATTGAGATACCAAGACCTAGACTAGGGGATCCTCAAGAGCGCATTTTGGAAAGCAGAAGACTCCCTGCGTCGGTCATTGTTGATTAATAAGATAGGGAGCCTAGTGGTAAAAAAGGAGACATATTCTTAATAATTAATTAATAGGTCATGGGTTGAATCCATGGTGGCCATCTACTTAGGAATTGATTTCCGATGAGTTACCTTGACACTAAAATGTTATAAGGTCAGACGAGTTTTTTCCGTGAGATTAGTCGAGGTGTACGCAAGCTGGCCCGGACATTCATATATATAAAATAAAAGGTAGGAAATCCGTCGTTGTATGTTGCAATTGCTCGAGATATCTAGGTTGCAGTTCAAAAATTATATTCTTAAAGGTAGAATGCGTCTTGTCGTTACACTCTACGTAAACAGGCTCACGAATGCAAACAAGGAACGATGGACGCCACTTCATACTTCAACAAATTGTCCCTAATTTGGATTTGTGTCATGAAATTATCTGGGATTGTTTGTGTGGAGGTGTCCAATATTCTAAGATGGAGGAATTGATCATGTTTATGATTTTCTAGCTGGTTTGAATTCCAAGTTCGATGTATTGCGAGGCCATATTCTAAGGCAGAGGCCTATACCTTCTCTTATGGAAGTGTGTTCTAAGGTGCGTCTAGAGGAAGATAGAGTCAATGTTATGAAAATCATGACTGTATCTGCTACTGATTCTGTTGCTTTTAATGCCACATTAGGTTTTGATATTGACAAGCAAAAAGGAAACAGACTCCAATGTGTGAACATTGCAAGAAACCTTGGCATATGAAAGAATTGTTGGAAGTCACATTGTAGACCACCCAAGCCCGCCCAACCTTGGGAGAGCTCTTATGAGTGAATCGATGAGTTCCCTTCAATCACAACCTCAAGAGTCAAGTGAATTGCAAAGTGACTCTAATGTCTCAAGCCATGGGGTTGTTGTTCAATTAGGTACAATACTTAAGTCTCCTCAGCCTAAATGGCAAGAAACCATGCGTACTTGATTTAGGGGCTACAAATCATTTGACTAGATTTTATGATAATTTTCCACCATATCTTTCGAGTGTTGGTAATGAAAAGATTCGGATTGTAGAAAGGTTCTTTGCTCCAATTGCGGGCAGGGGTCATATTTGAACCATTTGATGGTTTAACTTCATAAAATGTGTTGCATGTACCCAAAATATCTTAAAATTTACTATCTATTAGTAAGATAATTGGAGATTTGAATTTTCAAGTTGCCTTATTACCAGATAATGTTTTTTTTAGGACTTGAGCTCGGGGAAGACGATTGACGCTTCTGGGCACAATAGAGGATTCTAATTCCTTGACGACGATGTTCTCTTTAGGAATTGTTATAGTACTAGTTTGATGTCTTCTTATTTTTCAACTTTAGCAAAAGATTGTATGTTGTAGCATTTTCATGTGTTTCCTCATTTTTCAACTTCACCAAATTTCCAATATATGAAATAATTTGTTTCCTCATTTATTAATAAGGTTGATGTCTCCTTGGTCTTGTGATGCGTGCATTGTGCAAAACAGTAGGGTCACCTTTCTGTCTCGACCTTGTAAACATACTTAGCCCTTCACCCTTATTCATAGTGATGTTTAAGGTCCCTCGAGTCTTACCACCTCTTCTGGAAAACGTTGGTTTGTGTCCTTTATTGATGATTATTCCCGCCTCAACATGAGTTTTTCTCTGCACTAATAAATCTAAGGCTTCATCAATATTTAGAAAATTTTCCACTACTATTGAGACTCAGTTCAACAACACAATTGCTATTATTCGTAGTGATAATGGTCGTGAGTTCCTTAATAATACCCTTCGTGACTTTCTGTCTTCTAAAGACATTGTCCACCAAAGCTCGTGTGCTTATACCCCTCAATAGAATGCGATGCCTGAAAAGAAAAATCCTTATCCTGTCTACTTCACTTTCATCATACTTATGGGGGGATGCAATCTCACTGCAGCTTATCTTATTAATTGGATGCCTTCCCATGTCCTCCAACTCCAAACTCCTCTAGAATGCTTTAAGGAGTCATACCTTATCACATGACTTATTTTTTATGTCCCTCTTGGGGTTGTTGGGTGCACTTTGTCCATAATCATGGCTCTAACTAAACTAAGTTTACCCCTCCTACTCAGGAATGTGTCTTCGTTGGATATCCCTTTCACCAACAAGGTTATAAATGCTTTCTCCCCTCTCGAAAATACTTCATCTCCATAGATGTAACATTCTGTGAGGATCTAACCTTTCTTTCTCGCTAGCCTAGCCATCTTCACCCCCTATTGACCTTTCTGAACCCATCTTGAGTGCCCATGACACTATTATACCCACTAAACAAATCCCTTGGATAACTTATTGCAAGAAGAATCTCATAAAGGAAATGGTGTTCTCTACTGCTTTGCTGGCTCCCGTCCATGGATTTGAACTAACACGAGCTTGAGGTACTACTCGCCCTGATGATACTAACTTGTGTGTTGAGGATGGCATTGTTGATTTGGCTGAGAATGATAAGACTGATATGTTAGTTCTAGAGAATAACATGGTCGCAAGTAGTTATGAGACTTTGACAGAAACATAAGAGGGTTTCCATTACAGATGAGGAATAAGAAAAATCAAGGGATTATGATATCTCTTTTGACATGCCAATTGCATTGCAAAAGGGTACCAGTTCCTACACCAAGTACCCATGTACAACTTTCTATTTTACAGTAACTTGTGTTCCAAGTTCAGGGTGTTCACTTCTAGCCTTGATACAACAACAATACCGAGAAAACTTACATAAGATTGCAATCATGGATAATGTTTTCTAGCTACGGAAATTCCCTAGTGGAACTTACCATCATGGAAGAAATGGGAGCTCTTGAATAGAATAATACGTGAGGTCTTTGTACTCTTCCTAAAGGGCATAAAACAGTTGGGTGCAAGTAGGTATTCACTTTGAAGTATAAATTAGATGGAGCTCTAGATAGGTACAAGGCCTGGCTTGTAGGCAAAAGGGTTGACTCAAACTTATGGGATAGATTATTTTGGGACTTTCTTCCCTATAGCAAAGTTAAACACGGTCTGGGTCCTTTTTGTTGTAGTTAATAAAGATTGGCTTCTCCATCAACTTGATGTGAAAAATGCATTTTTGGATGGTGAATTAGAAGAAGTTTATATGAGCCCCTGGTTTTAAAGCTCAGTTTGATCATTAGGTATGTAAACTCAGAAAGTCTTTGTATAGTTTGAAACAGTCCCCAAGAGCGTGGCTTGATAGGTTTACTACATTTGTTAAGTCCCAAGGTTTCACTTAGAGACACTTTGATCACATGTTTACAAAAAGGTTAGTATCTGGGTAAATTGTTGTTCTAATTGTGTATGTAAATGATATTGTCTTGTCAACTTGTCAAGAGATCATACAACTGAGATCACCAGGTTGGAAAAGAAAATGGTTGACGAGTTTGTGATCAAAGATTTAGGGAATCTAAAGTATTTCCCTGGAATGGAGGTGGCAAGATCAAGGGAAGGGATCTCTGTTTCATCGCGGAAACATATCCTTGACTTGTTAAAAGTAACATGTATGATTGGATATGTTGACACTTGTATTGAATTCAATGCAAAATTGAGAGATTATGTTGACAAAGTTCCGGTCGATAAAGAAGGTATCAACATCCAGTGGGAAAGATGATTTACTTATCTCACACTAGTTCAGATATTTCTTATGCTGTCAATGTTGTTAGTCAGTTTATGCAGCCACCCTACAAAGAACATAAGGAAGTTGTGAACCAAGTTCTGAGATATTCGAAAAGCTCCCCTGAGTAAAGGTCTGATGTTCAGAAAAACTCACAGGAAATGCATTGAGGTTTATACCAACTCTGATTGGGTAGGATTAGTTATTGACAGAAAATTACTTCTAGGTATTGTACCTTTGTGTGAGGTAACCTAGTTACTTGGAGAAGTAAGAAGTAAAGTGTTGTTGCTAGAAGTAATGCTGAAGGTAAATACAGAGCTATGAGTAGTTTTCTCCCTACGAAGCTCTATTCTGATAATAAATTGGCTAGAACATTAGCCAATAATTCTATACAACATGATAGAACGAAACATGTGGAGATTGACAAACACTTTATAAAAAAGAAACTGGACACTGGCTGTATTTGTATTTCGTATATTTCGTATTTTTCATTTTGTCAACAAGTTTATGATGTTCTCACCAAAGGTTTACTTGGGCCAAGCTTTTACTCATGTGTTAGCAAGTTGGGTTTGATTGACATCTATGTTCCAACATGAGGGAGAGTGTTGGGAATGAAAGAATTTGTTGATAGTTTATTGTCTTGAGGGTATTTTAGTATTTTATTTTACCCTAAGTTTATTTCCTTTCTTGTATTAGGGCATTAAAATCTAGTTTCTTTTGTAACTTTCAGTGTGTGAAAATAATAAAAATCGACTCTTTATCATGGTTTTTTCTCCCTGTTATAGGGTTTTACACATAAACCTAGTGTTTTCTTTTTTTAATGTCTAACAATTACTTTATTATCTTATAAACCTTAATTCTTAGAACATTAAAAACATTGATACCTTTATCCAATCTGCTATTCATTTGTCTGTTATTGGTTACAGCTCTTTGACATTTGATGGGGGTTAGAAGATTGTTGGAAAAGGACTTGTGTATGGAGACGTATACTTTAGATGTACACAAAAGATATGTCAAGCAGTGTTTGGTGAAGGTAATGTTTTCTTCTCTTTATGTGACGTCTTGGTTTTCTAGGAGGTGGCATACTATTTCTGTTATGCCTTCTGCTTTATGATAATCGTGTTAAGTGCATATGAATATATGTATATATATCTATATATTTCTCTGTTTTGATATTAGATAAGTTTTTATATTTAAGGGAAGATGATAATTGAAAGAGAAGAGCCTAAAAGAATAAGTGGTTTTTATCTTTTGTTTTGTTGATACACTGTTTTATTAGAAGCCGAAGTCAAGTTGACAAAGGTATATAATAAGAATGTAGACCTAAGAAATTATAAGAATTGTGTTCTTGTAGGTATATATATCATGTCATCAACTTATTAATCCAGACCAATGAACCCATAAATCACAGAAGGAACCTATATCTTATTGGCACGAGTATTGGTTCACCTTATCAAGTTAGCTCATTCATCTGCTTCTTGGTCATTCAAACTATTCATGGATACCCTCCTTGAAGAATTTTAAACTTATGAACACAACACCTTACACCATCTTGTCACTAGCATGTGATACTCATCATTTGAATTGAGCAAGTTTGCTGAACTCTACTGGGATTTCCTGTTGATTCCATGTGTATGAATTTGAATGTGATACAAATATGGCATCCAAACTCAAGCCTACAAATATCATTTGGATAGTGACTACGAAAACCACACTTGGTAAGATATGGAATGAGAAAAATTATAGAATTTTGGAGAGGAGGGAGAGGTTGGGTGGGGTGGGACATCACTCTTCTTTTGGCCTTCTCTTGGTGTACTCTCTGTCTCTATCTTGTTCTGCAGTTAGTCCTAGGTTGACCATGAACTCAAGTCTCTCTTTGTAAGCCTTGGTGGCTTCTTCTATAACTATTTAATATATGCTTCAACGAAGTTGGTTTCTTATTGAGAAATATGGTCATAGTTGGAAGTAATGTGCTCCAAATACTTTCTGAGGCGTCTTTTGAGATTCAGAGTTTTAAATTTCTTGATCACAACTACTGTCCCAAAAATTTCACGATGACAACGTTTTTATATTTTCTAGTTATTTCAGTACTTGGAAGAAAATGTCTTTTGGACATCTTTCATCATCCTTGAATTGAGTTCTTTATTTTCTTCTGTATCCTAGTGCTTAGAAGCTGATTTGGAAGACAATGTATCCAAGGATTCTGAGTTGACAGGGAGAAAAAGTGTAAATAAAGAAGAAATGCCTGAGTCACCTGAAGGGCATCAGTCCAAGAAAGGTGCAAAGGAACCTTGCTTGGAAGATGAGGAAAAACTGGAAGACTCTCCAGTTATGGGCCTTCTCACAGGACGTAGCACAAAAAATGTTGAATCTGATGGAATCAAAGGAATCAAAGGCAAAGATGACAAAGATGTTCCTAGTGAGAGTACAATTATGAAAGCGATTAGAAAAAGAACTTCTTATCTTAAAGCTAATTCAGAGTAAGTTATTATTTTCTCCATTATGGATCATCTTTATGCTATGAATTTTCATTCGTTTACATAGCTATGTACCTTTTCCTGTATTTTGATCCCCTTTGCTTTCTTAAAGCTCAAAATTGGTCTGGAAGAACATCATAATGGAACCATTCTTGCTAGAAATTCATAATGCGTTGCTTTACTTCTAATTCATTAAAAACATAGTGGAATTGAAAAAGAGTAGTTGTTTGAAGAATAGGTATTAGAATTGCTAATGAAGTACTCATAAAGTCATTGAGTCTCAAATTGTTGCTGTCTATTTGTTTTAATGTTATTTGCATAGACGCTCTTCCCTTTAATAGGAAACAAATAAATAATAAAGAGAATGTGTTTATTCAGGAAAGTTACTATGGCTGGAGTTCGCCGCCTTCTGGAGGATGACCTTAAACTTACTAAAAATGCTCTCGACAGTTGTAAGAAGTTGATAAGCCAACAAGTAGAGGAGGTGAGTCAATCCTGTTGAGTACCCATTTCTCTAGGTTATAATGTCAACAACCATACTAATAAATTTTTTTTTCTTATGAATATTAAAATCAGATATTAACTTCTTGTGAAGCTGCTGAAAAAGTTTCTAATTTGAAAACTCCGAAAAAGGTTAGCAAAGAAAGCTCTCATTCTACTGAAGGGAGCAGCAGTGAGGAGGAAAACGATGAGGTAAACCCTGGAAAGACAAATGCAACTAAAGGAAGAATACTGGACTCTAATGAAACAAAAAAGCGGAAAAGGTCTACAAAGAAGAACGTCTCTGCCAAGAAGCAAAGGAAGCATGTCCAGGATACATCAGATGAGGATAGTGATGAAGGTGGTGAAAATGTCTCTGAAGATGATCAGTCTGGTTCATCCAATGAAAAACCTGTGAAGGTTAGATTCGTTTTCTCCTTTCTTACATTTGATAATTAACATATTGAATTCCGGGTGATTTTTTTAAACCTCACAGAAGGAAGTTTCAAGTTCAACTCCTGTCTATGGCAAGCGCGTGGAGCACTTGAAATCTGTTATCAAATCATGTGGGATGAGGTTTTGTTTCTATCTCTCACCAATTACATGCTTAATTTCTGAGTTGATGTGTAAAGAATTAAGATTTAAGATCAGTAATCTCTCGTACAGTGTTCCTCCATCGATTTATAAGAAAGTCAAGCAGGCACCTGAAAGCAAACGTGAATCACAACTTATAAAGGAGTTGGAGGGGATACTATCCAGAGAAGGACTGTCTGCTAATCCCACGGAAAAAGGTGAACGAAAGGAATGGAGTGTTACCATTGGATGTGGGGGAAAAAAGTAGATTACAATCTTATTTATGGGCTTGGTTCCTCGTAATTTTACTTGTTCAATGAAATTAGTTTCATATAAGAAAAAGATATGGAGTAGAAGTTAGATTTATTTGTGAAATTGTTCTTTGGTGGGATTTTTTTGGGTTGTCAGCTCTACCCTGTGTTGCTGGTGGCTCTCTATATATTAGTAAACATACTAGCACTACAGATATAGCACAGCTGTTTGTAGCTTTTCATTACTGTTTCAATGTTCTCAACCAAAAATCATGCACATTATCTGGTGTCAGAAATTAAGGAAGTCAAAAAGAAGAAGGAAAGGGCCAAAGAACTTGAAGGCATCGACTTAAGTAATATTGTCTCAAGTTCACGTAGAAGATCAACAACCAGTTATGTTGCACCACCTCCAAAACCGAAAATACCAGTTAAAACTGATGGCGATGATGCAGATGATACTGATGACGATGAAGAGGAGGATGATGAAGAAGAAGAAGACGACGATGAAGAAGAAGAGGACGGTGAGGAAGAGGAGGATAATGGCGATGTTGATGAAAGCCAAGGTGAAGAATTTAACGAGGGTAACAAATTGTTCACTTTTTAAAACTTGACATGCTGGCTTTGATTCTTTAATAGAAGCTTTTGATTGTTTTTAAAATCTGATTTCGTGATTGATTGATTTTGCTTCCGGTTTTGTTATATCACCCTTGGCTTTTGATGTGGTTTTCCTACAGATGACAATGAAGACAGTGATTGAAACCGGAAAAGCATCCAAGATTCTAGCATCTGATCCTTGATCAACGTTGAAACGATCGAGTGTAAACTAATTCTCTATGTAGTTCCCTTATTTCTTAGTTTTATTGAAGAGCTTGTAGTGAGCGATGATAGAGCTATATATCTAGGAGATTGGACGTAGTATTATTGTACAATATTTTTTACTCTTCATGATAAAGACGAACGAAAGAACACCTATATAATTTTGATTTATCC ATAGTCATTCTTCGAAAGTCCTAACACAACCTACACTCCAGAGCCCATAATTTCCTTTTCTTCGCACAACAATCGGTGCGAGTCGTAGAACAGCAAAATGGCGGAGGAATTACAAGGCAACGATGCTCTCAAAGAAGAACCCATGGATGTAGCTGTTGATATAGAGACGAAGATTCATAACGCTATGCGCTCTCGCATCTCTCACTTCAAGGAACAAGCCGACTCTTTGACATTTGATGGGGGTTAGAAGATTGTTGGAAAAGGACTTGTGTATGGAGACGTATACTTTAGATGTACACAAAAGATATGTCAAGCAGTGTTTGGTGAAGTGCTTAGAAGCTGATTTGGAAGACAATGTATCCAAGGATTCTGAGTTGACAGGGAGAAAAAGTGTAAATAAAGAAGAAATGCCTGAGTCACCTGAAGGGCATCAGTCCAAGAAAGGTGCAAAGGAACCTTGCTTGGAAGATGAGGAAAAACTGGAAGACTCTCCAGTTATGGGCCTTCTCACAGGACGTAGCACAAAAAATGTTGAATCTGATGGAATCAAAGGAATCAAAGGCAAAGATGACAAAGATGTTCCTAGTGAGAGTACAATTATGAAAGCGATTAGAAAAAGAACTTCTTATCTTAAAGCTAATTCAGAGAAAGTTACTATGGCTGGAGTTCGCCGCCTTCTGGAGGATGACCTTAAACTTACTAAAAATGCTCTCGACAGTTGTAAGAAGTTGATAAGCCAACAAGTAGAGGAGATATTAACTTCTTGTGAAGCTGCTGAAAAAGTTTCTAATTTGAAAACTCCGAAAAAGGTTAGCAAAGAAAGCTCTCATTCTACTGAAGGGAGCAGCAGTGAGGAGGAAAACGATGAGGTAAACCCTGGAAAGACAAATGCAACTAAAGGAAGAATACTGGACTCTAATGAAACAAAAAAGCGGAAAAGGTCTACAAAGAAGAACGTCTCTGCCAAGAAGCAAAGGAAGCATGTCCAGGATACATCAGATGAGGATAGTGATGAAGGTGGTGAAAATGTCTCTGAAGATGATCAGTCTGGTTCATCCAATGAAAAACCTGTGAAGAAGGAAGTTTCAAGTTCAACTCCTGTCTATGGCAAGCGCGTGGAGCACTTGAAATCTGTTATCAAATCATGTGGGATGAGTGTTCCTCCATCGATTTATAAGAAAGTCAAGCAGGCACCTGAAAGCAAACGTGAATCACAACTTATAAAGGAGTTGGAGGGGATACTATCCAGAGAAGGACTGTCTGCTAATCCCACGGAAAAAGAAATTAAGGAAGTCAAAAAGAAGAAGGAAAGGGCCAAAGAACTTGAAGGCATCGACTTAAGTAATATTGTCTCAAGTTCACGTAGAAGATCAACAACCAGTTATGTTGCACCACCTCCAAAACCGAAAATACCAGTTAAAACTGATGGCGATGATGCAGATGATACTGATGACGATGAAGAGGAGGATGATGAAGAAGAAGAAGACGACGATGAAGAAGAAGAGGACGGTGAGGAAGAGGAGGATAATGGCGATGTTGATGAAAGCCAAGGTGAAGAATTTAACGAGGATGACAATGAAGACAGTGATTGAAACCGGAAAAGCATCCAAGATTCTAGCATCTGATCCTTGATCAACGTTGAAACGATCGAGTGTAAACTAATTCTCTATGTAGTTCCCTTATTTCTTAGTTTTATTGAAGAGCTTGTAGTGAGCGATGATAGAGCTATATATCTAGGAGATTGGACGTAGTATTATTGTACAATATTTTTTACTCTTCATGATAAAGACGAACGAAAGAACACCTATATAATTTTGATTTATCC ATGGGGGTTAGAAGATTGTTGGAAAAGGACTTGTGTATGGAGACGTATACTTTAGATGTACACAAAAGATATGTCAAGCAGTGTTTGGTGAAGTGCTTAGAAGCTGATTTGGAAGACAATGTATCCAAGGATTCTGAGTTGACAGGGAGAAAAAGTGTAAATAAAGAAGAAATGCCTGAGTCACCTGAAGGGCATCAGTCCAAGAAAGGTGCAAAGGAACCTTGCTTGGAAGATGAGGAAAAACTGGAAGACTCTCCAGTTATGGGCCTTCTCACAGGACGTAGCACAAAAAATGTTGAATCTGATGGAATCAAAGGAATCAAAGGCAAAGATGACAAAGATGTTCCTAGTGAGAGTACAATTATGAAAGCGATTAGAAAAAGAACTTCTTATCTTAAAGCTAATTCAGAGAAAGTTACTATGGCTGGAGTTCGCCGCCTTCTGGAGGATGACCTTAAACTTACTAAAAATGCTCTCGACAGTTGTAAGAAGTTGATAAGCCAACAAGTAGAGGAGATATTAACTTCTTGTGAAGCTGCTGAAAAAGTTTCTAATTTGAAAACTCCGAAAAAGGTTAGCAAAGAAAGCTCTCATTCTACTGAAGGGAGCAGCAGTGAGGAGGAAAACGATGAGGTAAACCCTGGAAAGACAAATGCAACTAAAGGAAGAATACTGGACTCTAATGAAACAAAAAAGCGGAAAAGGTCTACAAAGAAGAACGTCTCTGCCAAGAAGCAAAGGAAGCATGTCCAGGATACATCAGATGAGGATAGTGATGAAGGTGGTGAAAATGTCTCTGAAGATGATCAGTCTGGTTCATCCAATGAAAAACCTGTGAAGAAGGAAGTTTCAAGTTCAACTCCTGTCTATGGCAAGCGCGTGGAGCACTTGAAATCTGTTATCAAATCATGTGGGATGAGTGTTCCTCCATCGATTTATAAGAAAGTCAAGCAGGCACCTGAAAGCAAACGTGAATCACAACTTATAAAGGAGTTGGAGGGGATACTATCCAGAGAAGGACTGTCTGCTAATCCCACGGAAAAAGAAATTAAGGAAGTCAAAAAGAAGAAGGAAAGGGCCAAAGAACTTGAAGGCATCGACTTAAGTAATATTGTCTCAAGTTCACGTAGAAGATCAACAACCAGTTATGTTGCACCACCTCCAAAACCGAAAATACCAGTTAAAACTGATGGCGATGATGCAGATGATACTGATGACGATGAAGAGGAGGATGATGAAGAAGAAGAAGACGACGATGAAGAAGAAGAGGACGGTGAGGAAGAGGAGGATAATGGCGATGTTGATGAAAGCCAAGGTGAAGAATTTAACGAGGATGACAATGAAGACAGTGATTGA MGVRRLLEKDLCMETYTLDVHKRYVKQCLVKCLEADLEDNVSKDSELTGRKSVNKEEMPESPEGHQSKKGAKEPCLEDEEKLEDSPVMGLLTGRSTKNVESDGIKGIKGKDDKDVPSESTIMKAIRKRTSYLKANSEKVTMAGVRRLLEDDLKLTKNALDSCKKLISQQVEEILTSCEAAEKVSNLKTPKKVSKESSHSTEGSSSEEENDEVNPGKTNATKGRILDSNETKKRKRSTKKNVSAKKQRKHVQDTSDEDSDEGGENVSEDDQSGSSNEKPVKKEVSSSTPVYGKRVEHLKSVIKSCGMSVPPSIYKKVKQAPESKRESQLIKELEGILSREGLSANPTEKEIKEVKKKKERAKELEGIDLSNIVSSSRRRSTTSYVAPPPKPKIPVKTDGDDADDTDDDEEEDDEEEEDDDEEEEDGEEEEDNGDVDESQGEEFNEDDNEDSD*
BLAST of MELO3C010600 vs. Swiss-Prot
Match: UBF1_MOUSE (Nucleolar transcription factor 1 OS=Mus musculus GN=Ubtf PE=1 SV=1) HSP 1 Score: 79.0 bits (193), Expect = 1.5e-13 Identity = 85/392 (21.68%), Postives = 166/392 (42.35%), Query Frame = 1
HSP 2 Score: 50.1 bits (118), Expect = 7.6e-05 Identity = 18/54 (33.33%), Postives = 34/54 (62.96%), Query Frame = 1
BLAST of MELO3C010600 vs. Swiss-Prot
Match: IF2P_HUMAN (Eukaryotic translation initiation factor 5B OS=Homo sapiens GN=EIF5B PE=1 SV=4) HSP 1 Score: 77.8 bits (190), Expect = 3.4e-13 Identity = 91/435 (20.92%), Postives = 176/435 (40.46%), Query Frame = 1
BLAST of MELO3C010600 vs. Swiss-Prot
Match: IF2P_PONAB (Eukaryotic translation initiation factor 5B OS=Pongo abelii GN=EIF5B PE=2 SV=2) HSP 1 Score: 77.4 bits (189), Expect = 4.4e-13 Identity = 92/435 (21.15%), Postives = 176/435 (40.46%), Query Frame = 1
BLAST of MELO3C010600 vs. Swiss-Prot
Match: UBF1A_XENLA (Nucleolar transcription factor 1-A OS=Xenopus laevis GN=ubtf-a PE=2 SV=1) HSP 1 Score: 73.2 bits (178), Expect = 8.4e-12 Identity = 32/79 (40.51%), Postives = 51/79 (64.56%), Query Frame = 1
HSP 2 Score: 69.7 bits (169), Expect = 9.2e-11 Identity = 37/93 (39.78%), Postives = 54/93 (58.06%), Query Frame = 1
HSP 3 Score: 51.6 bits (122), Expect = 2.6e-05 Identity = 21/55 (38.18%), Postives = 33/55 (60.00%), Query Frame = 1
BLAST of MELO3C010600 vs. Swiss-Prot
Match: UBF1_HUMAN (Nucleolar transcription factor 1 OS=Homo sapiens GN=UBTF PE=1 SV=1) HSP 1 Score: 72.4 bits (176), Expect = 1.4e-11 Identity = 83/392 (21.17%), Postives = 166/392 (42.35%), Query Frame = 1
HSP 2 Score: 49.3 bits (116), Expect = 1.3e-04 Identity = 20/53 (37.74%), Postives = 35/53 (66.04%), Query Frame = 1
HSP 3 Score: 44.7 bits (104), Expect = 3.2e-03 Identity = 22/62 (35.48%), Postives = 33/62 (53.23%), Query Frame = 1
BLAST of MELO3C010600 vs. TrEMBL
Match: A0A0A0LIS6_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_2G232480 PE=4 SV=1) HSP 1 Score: 819.7 bits (2116), Expect = 1.8e-234 Identity = 425/450 (94.44%), Postives = 432/450 (96.00%), Query Frame = 1
BLAST of MELO3C010600 vs. TrEMBL
Match: A0A0A0LIS6_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_2G232480 PE=4 SV=1) HSP 1 Score: 62.0 bits (149), Expect = 2.1e-06 Identity = 82/325 (25.23%), Postives = 136/325 (41.85%), Query Frame = 1
HSP 2 Score: 486.1 bits (1250), Expect = 4.6e-134 Identity = 276/464 (59.48%), Postives = 341/464 (73.49%), Query Frame = 1
BLAST of MELO3C010600 vs. TrEMBL
Match: B9RRG5_RICCO (Putative uncharacterized protein OS=Ricinus communis GN=RCOM_1190860 PE=4 SV=1) HSP 1 Score: 480.7 bits (1236), Expect = 1.9e-132 Identity = 269/455 (59.12%), Postives = 335/455 (73.63%), Query Frame = 1
BLAST of MELO3C010600 vs. TrEMBL
Match: B9RRG5_RICCO (Putative uncharacterized protein OS=Ricinus communis GN=RCOM_1190860 PE=4 SV=1) HSP 1 Score: 70.9 bits (172), Expect = 4.6e-09 Identity = 85/322 (26.40%), Postives = 139/322 (43.17%), Query Frame = 1
HSP 2 Score: 474.2 bits (1219), Expect = 1.8e-130 Identity = 263/461 (57.05%), Postives = 325/461 (70.50%), Query Frame = 1
BLAST of MELO3C010600 vs. TrEMBL
Match: M5XPU1_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa004840mg PE=4 SV=1) HSP 1 Score: 59.7 bits (143), Expect = 1.1e-05 Identity = 76/306 (24.84%), Postives = 121/306 (39.54%), Query Frame = 1
HSP 2 Score: 471.9 bits (1213), Expect = 9.0e-130 Identity = 269/465 (57.85%), Postives = 332/465 (71.40%), Query Frame = 1
BLAST of MELO3C010600 vs. TAIR10
Match: AT4G08310.1 (AT4G08310.1 FUNCTIONS IN: molecular_function unknown) HSP 1 Score: 374.0 bits (959), Expect = 1.3e-103 Identity = 223/460 (48.48%), Postives = 294/460 (63.91%), Query Frame = 1
BLAST of MELO3C010600 vs. TAIR10
Match: AT1G44780.1 (AT1G44780.1 Histone chaperone domain CHZ (InterPro:IPR019098)) HSP 1 Score: 322.4 bits (825), Expect = 4.5e-88 Identity = 195/461 (42.30%), Postives = 277/461 (60.09%), Query Frame = 1
HSP 2 Score: 63.9 bits (154), Expect = 2.9e-10 Identity = 71/325 (21.85%), Postives = 134/325 (41.23%), Query Frame = 1
BLAST of MELO3C010600 vs. TAIR10
Match: AT5G63550.2 (AT5G63550.2 DEK domain-containing chromatin associated protein) HSP 1 Score: 71.6 bits (174), Expect = 1.4e-12 Identity = 74/303 (24.42%), Postives = 132/303 (43.56%), Query Frame = 1
HSP 2 Score: 37.7 bits (86), Expect = 2.2e-02 Identity = 36/131 (27.48%), Postives = 52/131 (39.69%), Query Frame = 1
HSP 3 Score: 36.2 bits (82), Expect = 6.4e-02 Identity = 21/60 (35.00%), Postives = 29/60 (48.33%), Query Frame = 1
HSP 4 Score: 32.7 bits (73), Expect = 7.1e-01 Identity = 17/57 (29.82%), Postives = 29/57 (50.88%), Query Frame = 1
HSP 5 Score: 31.6 bits (70), Expect = 1.6e+00 Identity = 21/71 (29.58%), Postives = 33/71 (46.48%), Query Frame = 1
HSP 6 Score: 30.8 bits (68), Expect = 2.7e+00 Identity = 19/66 (28.79%), Postives = 33/66 (50.00%), Query Frame = 1
BLAST of MELO3C010600 vs. TAIR10
Match: AT2G22795.1 (AT2G22795.1 unknown protein) HSP 1 Score: 65.1 bits (157), Expect = 1.3e-10 Identity = 93/424 (21.93%), Postives = 168/424 (39.62%), Query Frame = 1
HSP 2 Score: 63.9 bits (154), Expect = 2.9e-10 Identity = 93/422 (22.04%), Postives = 176/422 (41.71%), Query Frame = 1
HSP 3 Score: 50.1 bits (118), Expect = 4.3e-06 Identity = 91/410 (22.20%), Postives = 148/410 (36.10%), Query Frame = 1
HSP 4 Score: 40.0 bits (92), Expect = 4.4e-03 Identity = 53/221 (23.98%), Postives = 87/221 (39.37%), Query Frame = 1
BLAST of MELO3C010600 vs. TAIR10
Match: AT5G63740.1 (AT5G63740.1 RING/U-box superfamily protein) HSP 1 Score: 63.2 bits (152), Expect = 4.9e-10 Identity = 20/56 (35.71%), Postives = 45/56 (80.36%), Query Frame = 1
HSP 2 Score: 60.8 bits (146), Expect = 2.4e-09 Identity = 32/108 (29.63%), Postives = 60/108 (55.56%), Query Frame = 1
HSP 3 Score: 53.9 bits (128), Expect = 3.0e-07 Identity = 20/39 (51.28%), Postives = 30/39 (76.92%), Query Frame = 1
BLAST of MELO3C010600 vs. NCBI nr
Match: gi|659133379|ref|XP_008466701.1| (PREDICTED: DNA ligase 1 isoform X1 [Cucumis melo]) HSP 1 Score: 864.4 bits (2232), Expect = 8.9e-248 Identity = 439/439 (100.00%), Postives = 439/439 (100.00%), Query Frame = 1
BLAST of MELO3C010600 vs. NCBI nr
Match: gi|659133381|ref|XP_008466703.1| (PREDICTED: transcriptional regulator ATRX homolog isoform X2 [Cucumis melo]) HSP 1 Score: 845.1 bits (2182), Expect = 5.6e-242 Identity = 433/439 (98.63%), Postives = 433/439 (98.63%), Query Frame = 1
BLAST of MELO3C010600 vs. NCBI nr
Match: gi|449455244|ref|XP_004145363.1| (PREDICTED: DNA ligase 1 isoform X1 [Cucumis sativus]) HSP 1 Score: 819.7 bits (2116), Expect = 2.5e-234 Identity = 425/450 (94.44%), Postives = 432/450 (96.00%), Query Frame = 1
BLAST of MELO3C010600 vs. NCBI nr
Match: gi|449455244|ref|XP_004145363.1| (PREDICTED: DNA ligase 1 isoform X1 [Cucumis sativus]) HSP 1 Score: 62.0 bits (149), Expect = 3.1e-06 Identity = 82/325 (25.23%), Postives = 136/325 (41.85%), Query Frame = 1
HSP 2 Score: 816.6 bits (2108), Expect = 2.1e-233 Identity = 420/439 (95.67%), Postives = 420/439 (95.67%), Query Frame = 1
BLAST of MELO3C010600 vs. NCBI nr
Match: gi|778669103|ref|XP_011649194.1| (PREDICTED: DNA ligase 1 isoform X2 [Cucumis sativus]) HSP 1 Score: 800.4 bits (2066), Expect = 1.6e-228 Identity = 419/450 (93.11%), Postives = 426/450 (94.67%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
This gene is associated with the following unigenes:
The following mRNA feature(s) are a part of this gene:
The following transcribed_cluster feature(s) are associated with this gene:
Analysis Name: InterPro Annotations of melon
Date Performed: 2016-09-28
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
|